首页> 外文会议>International Symposium on Eco-Materials Processing and Design(ISEPD-8); 20070111-13; Kitakyushu(JP) >Characterization and Fabrication of Nano-Sized Patterns and Microfluidic Channels Derived from Polyvinylsilazane via Soft Lithographic Technique
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Characterization and Fabrication of Nano-Sized Patterns and Microfluidic Channels Derived from Polyvinylsilazane via Soft Lithographic Technique

机译:通过软光刻技术表征和制备聚乙烯基硅氮烷的纳米图形和微流体通道

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Interests on the fabrication of microfluidic devices have increased in the fields of micro total analysis system (μ-TAS) and MEMS (Microelectromechanical systems) due to their chemical inertness and high thermal stability. The thermal characterization of the SiCN preceramic polymer, polyvinylsilazane, showed that the cured polymer has ceramic properties at heat treatment temperature of 600 ℃ or above. In the characterization of the mechanical properties, the characteristic values of the elastic modulus and hardness notably increased for the heat-treated SiCN. The present study describes the preparation of nano-sized patterns and microfluidic channels using a soft lithographic technique. The study shows that the fabrication of microchannels using the cured inorganic polymers holds tremendous potential in the field of microfluidics, where materials with high optical transparency, thermal stability and chemical inertness are in demand as niche between conventional microfluidics using glass and polymeric materials.
机译:由于其化学惰性和高热稳定性,在微全分析系统(μ-TAS)和MEMS(微机电系统)领域中,对微流体装置制造的兴趣日益增加。 SiCN预陶瓷聚合物聚乙烯基硅氮烷的热表征表明,固化的聚合物在600℃或更高的热处理温度下具有陶瓷性能。在机械性能的表征中,热处理的SiCN的弹性模量和硬度的特征值显着增加。本研究描述了使用软光刻技术制备纳米尺寸的图案和微流体通道。研究表明,使用固化的无机聚合物制造微通道在微流体领域具有巨大的潜力,在光学和高透明性,热稳定性和化学惰性方面,作为使用玻璃和聚合物材料的传统微流体之间的利基市场,材料的需求越来越高。

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